Samy Maha Mohamed, Mohamed Mohamed Gamal, Kuo Shiao-Wei
Department of Materials and Optoelectronic Science, College of Semiconductor and Advanced Technology Research, Center for Functional Polymers and Supramolecular Materials, National Sun Yat-sen University, Kaohsiung 804, Taiwan.
Chemistry Department, Faculty of Science, Assiut University, Assiut 71515, Egypt.
Polymers (Basel). 2023 Feb 22;15(5):1095. doi: 10.3390/polym15051095.
This work describes the facile designing of three conjugated microporous polymers incorporated based on the ferrocene (FC) unit with 1,4-bis(4,6-diamino-s-triazin-2-yl)benzene (PDAT), tris(4-aminophenyl)amine (TPA-NH), and tetrakis(4-aminophenyl)ethane (TPE-NH) to form PDAT-FC, TPA-FC, and TPE-FC CMPs from Schiff base reaction of 1,1'-diacetylferrocene monomer with these three aryl amines, respectively, for efficient supercapacitor electrodes. PDAT-FC and TPA-FC CMPs samples featured higher surface area values of approximately 502 and 701 m g, in addition to their possession of both micropores and mesopores. In particular, the TPA-FC CMP electrode achieved more extended discharge time compared with the other two FC CMPs, demonstrating good capacitive performance with a specific capacitance of 129 F g and capacitance retention value of 96% next 5000 cycles. This feature of TPA-FC CMP is attributed to the presence of redox-active triphenylamine and ferrocene units in its backbone, in addition to a high surface area and good porosity that facilitates the redox process and provides rapid kinetics.
这项工作描述了基于二茂铁(FC)单元与1,4-双(4,6-二氨基-s-三嗪-2-基)苯(PDAT)、三(4-氨基苯基)胺(TPA-NH)和四(4-氨基苯基)乙烷(TPE-NH),通过1,1'-二乙酰基二茂铁单体与这三种芳胺分别进行席夫碱反应,轻松设计出三种共轭微孔聚合物,以形成PDAT-FC、TPA-FC和TPE-FC共轭微孔聚合物,用于高效超级电容器电极。PDAT-FC和TPA-FC共轭微孔聚合物样品除了具有微孔和中孔外,还具有约502和701 m²/g的较高表面积值。特别是,与其他两种二茂铁共轭微孔聚合物相比,TPA-FC共轭微孔聚合物电极实现了更长的放电时间,展现出良好的电容性能,比电容为129 F/g,在5000次循环后的电容保持值为96%。TPA-FC共轭微孔聚合物的这一特性归因于其主链中存在氧化还原活性三苯胺和二茂铁单元,以及有助于氧化还原过程并提供快速动力学的高表面积和良好孔隙率。